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Test: Heat Treatment of Metals & Elastomer - 2 - Mechanical Engineering MCQ


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30 Questions MCQ Test GATE Mechanical (ME) Mock Test Series 2025 - Test: Heat Treatment of Metals & Elastomer - 2

Test: Heat Treatment of Metals & Elastomer - 2 for Mechanical Engineering 2024 is part of GATE Mechanical (ME) Mock Test Series 2025 preparation. The Test: Heat Treatment of Metals & Elastomer - 2 questions and answers have been prepared according to the Mechanical Engineering exam syllabus.The Test: Heat Treatment of Metals & Elastomer - 2 MCQs are made for Mechanical Engineering 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Heat Treatment of Metals & Elastomer - 2 below.
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Test: Heat Treatment of Metals & Elastomer - 2 - Question 1

Consider the following statements relating to mechanical properties of ceramics:1. Tensile strength is theoretically high but in practice quite low. 
2. Compressive strength is many times lower than tensile strength.
3. Shear strength is high.
4. Transverse strength is easy to ascertain.Which of the statements given above are correct?

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 1

Ans. (a) 2. Compressive strength is many times higher than tensile strength.
Ceramics
1. They contain both metallic and non-metallic elements.
2. Characterized by their higher resistance to high temperatures and harsh environments than metals and polymers.
3. Typically good insulators to passage of both heat and electricity.
4. Less dense than most metals and alloys.
5. They are harder and stiffer, but brittle in nature.
6. They are mostly oxides, nitrides, and carbides of metals.
7. Wide range: traditional (clay, silicate glass, cement) to advanced (carbides, pure oxides, non-silicate glasses).

Test: Heat Treatment of Metals & Elastomer - 2 - Question 2

Cast steel crankshaft surface is hardened by 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 2

Ans. (d)

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Test: Heat Treatment of Metals & Elastomer - 2 - Question 3

Hardness of steel greatly improves with 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 3

Ans. (b)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 4

Which one of the following is correct? 
When "devitrification" of inorganic glasses is done,

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 4

Ans. (c) Inorganic glasses can be made to transform from a non crystalline state to one that crystalline by the proper high – temperature heat treatment which is called devitrification.

Test: Heat Treatment of Metals & Elastomer - 2 - Question 5

Major operations in the manufacture of steel balls used for Ball bearings are givenbelow 
1. Oil lapping
2. Cold heading
3. Annealing
4. Hardening
5. Rough grinding
The correct sequence of these operations is

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 5

Ans. (c)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 6

Assertion (A): Carburizing is done on non-ferrous alloys to increase the surfacehardness.  
Reason (R): Precipitation hardening of non-ferrous alloys involves solution heattreatment followed by precipitation heat treatment.

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 6

Ans. (d) A is false. Carburizing is done only on ferrous alloys to increase the surface
hardenss but it is not done on non-

Test: Heat Treatment of Metals & Elastomer - 2 - Question 7

Which one of the following pairs is correctly matched? 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 7

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 8

Which one of the following elements/ alloy exhibits season cracking?  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 8

Ans. (b)
i. Copper alloys cracks in ammonaical solution (Season Cracking)
ii. Stainless steel and Aluminium cracks in the presence of chlorides, Steel cracks in the presence of alkali (Boiler Cracking) or Caustic Cracking.

Test: Heat Treatment of Metals & Elastomer - 2 - Question 9

Induction hardening is basically a 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 9

Ans. (b)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 10

Which one among the following is the most effective strengthening mechanism ofnon-ferrous metal?

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 10

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 11

Guideways of lathe beds are hardened by 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 11

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 12

In case carburising Carbon is introduced to form a high carbon layer at thesurface. The carbon is introduce in the form of 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 12

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 13

Temperature required for full annealing in hyper-eutectoid steel is 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 13

Ans. (c)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 14

Match List I (Name of treatment) with List II (Media used) and select the correct answer using the codes given below the Lists 
List I                                                                                   List II
A. Pack carburizing                                                   1. Ammonia gas
B. Gas carburizing                                                     2. Sodium cyanide
C. Cyaniding                                                              3. Carburizing compound
D. Nitriding                                                                 4. Ethane
Codes: A B C D                                   A B C D
       (a) 3 4 2 1                                (b) 2 1 3 4
       (c) 3 1 2 4                                (d) 2 4 3 1

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 14

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 15

Globular form of cementite in the structure of steel is obtained through  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 15

Ans. (c)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 16

The complete phase recrystallization and fine grain structure is obtained incasting, forging and rolled parts by:  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 16

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 17

Assertion (A): Normalized steel will have lower hardness than annealed steel.Reason (R): The pearlite of normalized steel is finer and has lower intermolecularspace. 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 17

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 18

Which of the following statements are true of annealing of steels? 
1. Steels are heated to 500 to 700°C.
2. Cooling is done slowly and steadily.
3. Internal stresses are relieved.
4. Ductility of steel is increased.
Select the correct answer using the codes given below:
Codes:

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 18

Ans. (a) Steels are heated to 30 to 50°C above the upper critical temperature.

Test: Heat Treatment of Metals & Elastomer - 2 - Question 19

The pattern known as Widmanstatten structure is encountered in:  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 19

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 20

Heating the hypoeutectoid steels to 30oC above the upper critical temperatureline, soaking at that temperature and then cooling slowly to room temperature toform a pearlite and ferrite structure, is known as 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 20

Ans. (d) The process described is annealing.

Test: Heat Treatment of Metals & Elastomer - 2 - Question 21

Tempering is a process of annealing  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 21

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 22

Match List I with List II and select the correct answer using the codes given below the lists:  
List I (Heat treatment)                                      List II (Effect on the properties)
A. Annealing                                                 1. Refined grain structure
B. Nitriding                                                    2. Improves the hardness of the whole mass
C. Martempering                                           3. Increases surface hardness
D. Normalising                                              4. Improves ductility
Codes: A B C D                          A B C D
        (a) 4 3 2 1                      (b) 1 3 4 2
         c) 4 2 1 3                       (d) 2 1 3 4

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 22

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 23

Consider the following pairs:  
Heat treatment Effect on medium carbon steel
1. Normalizing : Grain refinement
2. Full annealing : Uniform grain structure
3. Martempering : Decreased ductility
4. Spheroidizing : Maximum softness
Which of the pairs given above are correctly matched?

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 23

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 24

Which of the following generally decreases in the steel after quench-hardening?  
1. Brittleness
2. Percentage elongation
3. Impact strength

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 24

Ans. (b)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 25

Austempering is employed to obtain:  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 25

Ans. (b)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 26

Consider the following quenching media:
1. Oil
2. Water
3. Water + NaOH
4. BrineThe correct sequence of these media in order of increasing hardness of steel undergoing heattreatment is

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 26

Ans. (c)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 27

'Tempering' of quenched martensitic steel is necessary to improve the 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 27

Ans. (d)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 28

Match List-I (Effect of Cooling) with List-II (Cooling Medium) and select the  correct answer using the code given below: 
List -I                                                                    List - II
A. Martensite                                                 1. Water quenched
B. Very fine pearlite                                       2. Air cooled
C. Fine pearlite                                              3. Furnace cooled
D. Coarse pearlite                                         4. Oil quenched
     A B C D                          A B C D
(a) 1 4 2 3                        (b) 2 3 1 4
(c) 2 3 4 1                        (d) 1 2 3 4

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 28

Ans. (a)

Test: Heat Treatment of Metals & Elastomer - 2 - Question 29

Two cooling curves A andB for a eutectoid ironcarbonalloy are superimposed on acontinuous cooling transformation diagram as shown in the given figure.Fine pearlite micro structureis represented by the points labelled  

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 29

Ans. (c) Fine pearlite structure is formed below eutectoid temperature and on moderate cooling.

Test: Heat Treatment of Metals & Elastomer - 2 - Question 30

Which one of the following mediums is used for the fastest cooling rate of steel quenching? 

Detailed Solution for Test: Heat Treatment of Metals & Elastomer - 2 - Question 30

Ans. (d) Comparative cooling rates

Brine has fastest cooling rate of steel quenching and is also used as secondary refrigerant.

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